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INDUSTRIAL TEMPERATURE RANGE
IDT74ALVCH16823
3.3V CMOS 18-BIT BUS-INTERFACE FLIP-FLOP WITH 3-STATE OUTPUTS
1
J ANUARY 2004
INDUS T RIAL T E MPE RAT URE RANGE
The IDT logo is a registered trademark of Integrated Device Technology, Inc.
2004 Integrated Device Technology, Inc.
DSC-4237/2
FEATURES:
0.5 MICRON CMOS Technology
Typical t
SK(o)
(Output Skew) < 250ps
ESD > 2000V per MIL-STD-883, Method 3015; > 200V using
machine model (C = 200pF, R = 0)
V
CC
= 3.3V ± 0.3V, Normal Range
V
CC
= 2.7V to 3.6V, Extended Range
V
CC
= 2.5V ± 0.2V
CMOS power levels (0.4
μ
W typ. static)
Rail-to-Rail output swing for increased noise margin
Available in TSSOP package
FUNCTIONAL BLOCK DIAGRAM
DRIV E FEATURES:
High Output Drivers: ±24mA
Suitable for heavy loads
APPLICATIONS:
3.3V high speed systems
3.3V and lower voltage computing systems
IDT74ALVCH16823
3.3V CMOS 18-BIT
BUS-INTERFACE FLIP-
FLOP WITH 3-STATE OUT-
PUTS AND BUS-HOLD
DESCRIPTION:
This 18-bit bus-interface flip-flop is built using advanced dual metal CMOS
technology. The ALVCH16823 features 3-state outputs designed specifically
for driving highly capacitive or relatively low-impedance loads. The device is
particularly suitable for implementing wider buffer registers, I/O ports, bidirec-
tional bus drivers with parity, and working registers.
The ALVCH16823 can be used as two 9-bit flip-flops or one 18-bit flip-flop.
With the clock-enable (
CLKEN
) input low, the D-type flip-flops enter data on the
low-to-high transitions of the clock. Taking
CLKEN
high disables the clock buffer,
thus latching the outputs. Taking the clear (
CLR
) input low causes the Q outputs
to go low independently of the clock.
A buffered output-enable (
OE
) input can be used to place the nine outputs
in either a normal logic state (high or low logic levels) or a high-impedance state.
In the high-impedance state, the outputs neither load nor drive the bus lines
significantly. The high-impedance state and increased drive provide the
capability to drive bus lines without need for interface or pullup components. The
OE
input does not affect the internal operation of the flip-flops. Old data can be
retained or new data can be entered while the outputs are in the high-impedance
state.
The ALVCH16823 has been designed with a ±24mA output driver. This
driver is capable of driving a moderate to heavy load while maintaining speed
performance.
The ALVCH16823 has “bus-hold” which retains the inputs’ last state
whenever the input goes to a high impedance. This prevents floating inputs and
elimnates the need for pull-up/down resistor.
TO 8 OTHER CHANNELS
1
OE
2
56
55
1
CE
R
C
1
3
1
Q
1
D
1
1
CLR
1
CLKEN
1
CLK
1
D
1
54
TO 8 OTHER CHANNELS
2
OE
27
29
30
28
CE
R
C
1
15
2
Q
1
D
1
2
CLR
2
CLKEN
2
CLK
2
D
1
42